SC2 - Beyond Classical Force Fields: A Hands-On Introduction to Machine Learning Potentials
SC3 - Functional Materials for Energy, Electronics, Healthcare, and Intelligent Surfaces: Processing Technologies and Applications
09:00 - 14:00
SC5 - Majorana Fermions in Nanowires: From Fundamentals to Real Devices
SC6 - Cristalografia na Ciência e Engenharia de Materiais: da Difração de Raios X à Cristalografia Quântica e o Design de Materiais
SC7 - Espectroscopia de elétrons excitados por raios-x (XPS) - Fundamentos e Aplicações / X-Ray Phothoelectron spectroscopy (XPS) - Fundamentals and Applications
SC9 - Introduction and Perspectives of High Entropy Alloys and Materials
14:00
17:00
14:0017:00
Short Courses
14:00 - 17:00
14:00 - 17:00
SC1 - Certificação e regulamentação de nanomateriais
SC2 - Beyond Classical Force Fields: A Hands-On Introduction to Machine Learning Potentials
SC3 - Functional Materials for Energy, Electronics, Healthcare, and Intelligent Surfaces: Processing Technologies and Applications
SC4 - Young Researchers´School: Tutorial on Scientific Writing and the Editorial Process
SC5 - Majorana Fermions in Nanowires: From Fundamentals to Real Devices
SC6 - Cristalografia na Ciência e Engenharia de Materiais: da Difração de Raios X à Cristalografia Quântica e o Design de Materiais
SC7 - Espectroscopia de elétrons excitados por raios-x (XPS) - Fundamentos e Aplicações / X-Ray Phothoelectron spectroscopy (XPS) - Fundamentals and Applications
SC8 - Single crystal growth and their technological applications
SC9 - Introduction and Perspectives of High Entropy Alloys and Materials
SC10 - Modelagem computacional aplicada à remediação ambiental
18:00
19:30
18:0019:30
18:00 - 19:30
18:00 - 19:30
OC/ML - Opening Ceremony and Memorial Lecture
19:30
21:00
19:3021:00
19:30 - 21:00
19:30 - 21:00
WCC - Welcome Cocktail
10:00
10:30
10:0010:30
10:00 - 10:30
10:00 - 10:30
CB - Coffee Break
12:30
14:00
12:3014:00
12:30 - 14:00
12:30 - 14:00
L - Lunch
16:00
16:30
16:0016:30
16:00 - 16:30
16:00 - 16:30
CB - Coffee Break
10:00
10:30
10:0010:30
10:00 - 10:30
10:00 - 10:30
CB - Coffee Break
12:30
14:00
12:3014:00
12:30 - 14:00
12:30 - 14:00
L - Lunch
14:00
15:00
14:0015:00
3A - Asa 2
14:00 - 15:00
OS.G.7 - Oral Session 7
G - High-Entropy Materials: Microstructure, properties and new perspectives
14:00 - 15:00
Chair: Francisco Gil Coury (UFSCAR) - Brazil
14:00 - 14:30Invited Lecture
4EXJ - Grain Boundary Segregation of Metallic Elements: A Novel Strategy for Enhancing the Ductility of Refractory Alloys (Invited Lecture)
GUO, S. - Chalmers University of Technology
14:30 - 14:45Oral
4EAH - Microstructural design and deformation mechanisms in the CrCoNi system
BERTOLI, G. - Univerdade Federal de São Carlos
14:45 - 15:00Oral
4FPD - Neutron Diffraction as a Technique for Detecting Chemical Short-Range Order in Complex concentrated alloy
BACURAU, V. P. - Univerdade Federal de São Carlos
15:00
16:00
15:0016:00
15:00 - 16:00
15:00 - 16:00
SC - Special Session
PW - Discussion Panel: Women in Material Science
16:00
16:00
16:0016:00
16:00 - 16:00
16:00 - 16:00
CB - Coffee Break
17:30
18:30
17:3018:30
3A - Asa 2
17:30 - 18:30
OS.G.8 - Oral Session 8
G - High-Entropy Materials: Microstructure, properties and new perspectives
17:30 - 18:30
17:30 - 18:00Invited Lecture
4DMN - Formation and OER properties of nano-porous concentrated TiVZrNbCoFe alloy (Invited Lecture)
CHAMPION, Y. - Centre National de la Recherche Scientifique
18:00 - 18:15Oral
4DXK - How composition controls exsolution dynamics in high-entropy spinel oxides
STRAPASSON, G. B. - Centro Nacional de Pesquisa em Energia e Materiais
18:15 - 18:30Oral
4DNM - Role of Multi-Principal Element Interactions in Oxidation of TiNb-Based RMPEAs at 600-1100 °C
DAINEZI, I. - Univerdade Federal de São Carlos
21:00
01:00
21:0001:00
21:00 - 01:00
21:00 - 01:00
CP - Conference Party
09:45
10:45
09:4510:45
1 - Asa 2
09:45 - 10:45
OS.G.9 - Oral Session 9
G - High-Entropy Materials: Microstructure, properties and new perspectives
09:45 - 10:45
Chair: Yannick Champion (CNRS) - France
09:45 - 10:15Invited Lecture
4ERG - Magnetocaloric High-Entropy Alloys: From Advanced Modelling to Advanced Characterization (Invited Lecture)
FRANCO, V. - Universidad de Sevilla
10:15 - 10:45Invited Lecture
4DWE - The Sweet Spot in the Vast High-Entropy Alloys Space for Magnetocalorics with First-Order Thermomagnetic Phase Transitions (Invited Lecture)
LAW, J. Y. - Universidad de Sevilla
10:45
11:15
10:4511:15
10:45 - 11:15
10:45 - 11:15
CB - Coffee Break
11:15
12:30
11:1512:30
1 - Asa 2
11:15 - 12:30
OS.G.10 - Oral Session 10
G - High-Entropy Materials: Microstructure, properties and new perspectives
11:15 - 12:30
Chair: Jia Yan Law (US) - Spain (españa)
11:15 - 11:45Invited Lecture
4FQJ - Guided design of medium entropy alloys through nanoscale deformation mechanism competition enabled through atomistic modeling (Invited Lecture)
TUCKER, G. J. - Baylor University
11:45 - 12:15Invited Lecture
4EQW - Microstructural engineering for multi-phase high-entropy alloys (Invited Lecture)
WANG, Y. - Ohio State University
12:15 - 12:30Oral
4GRR - Entropy Engineering of Inorganic Glasses
NASCIMENTO, M. L. F. - Universidade Federal da Bahia
12:30
14:00
12:3014:00
12:30 - 14:00
12:30 - 14:00
L - Lunch
14:00
16:00
14:0016:00
1 - Asa 2
14:00 - 16:00
OS.G.11 - Oral Session 11
G - High-Entropy Materials: Microstructure, properties and new perspectives
14:00 - 16:00
Chair: Ricardo Floriano (UNICAMP) - Brazil
14:00 - 14:30Invited Lecture
4DN2 - Variation of crystal structure in TiVZrHfNb1-xFex (x = 0, 0.2, 0.4, 0.6, 0.8 and 1) High Entropy Alloys (Invited Lecture)
HUOT, J. - Université du Quebec Trois-Rivieres
14:30 - 15:00Invited Lecture
4EEQ - Phase transformation mechanisms during hydrogenation of the TiVNbCr multicomponent alloy and their impact on the hydrogen storage properties (Invited Lecture)
ZEPON, G. - Universidade Federal de São Carlos
15:00 - 15:15Oral
4FSN - Efficient First-Principles Prediction of Pressure–Composition–Temperature Diagrams in Multicomponent Random Alloys for Hydrogen Storage
CHAVES, A. S. - Federal University of São Carlos
15:15 - 15:35Invited Lecture
4JAT - Hydrogen Storage Properties of Mg - High Entropy Alloy Composite at Mild Temperatures (Invited Lecture)
LEIVA, D. R. - Universidade Federal de São Carlos
15:35 - 16:00Invited Lecture
4EDT - Effect of heat treatment and thermomechanical processing on the microstructure and hydrogen storage properties of Ti-V-Nb-Cr-Mn multicomponent alloys (Invited Lecture)
CARDOSO, K. R. - Universidade Federal de São Paulo
16:00
16:30
16:0016:30
16:00 - 16:30
16:00 - 16:30
CB - Coffee Break
17:30
18:30
17:3018:30
1 - Asa 2
17:30 - 18:30
OS.G.12 - Oral Session 12
G - High-Entropy Materials: Microstructure, properties and new perspectives
17:30 - 18:30
Chair: Eric Marchezini Mazzer (UFSCAR) - Brazil
17:30 - 18:00Invited Lecture
4DVW - Design and surface biofunctionalization of novel biomedical HEAs (Invited Lecture)
CORRÊA, D. R. N. - Universidade Estadual Paulista "Júlio de Mesquita Filho"
18:00 - 18:30Invited Lecture
4FCY - Thermodynamic databases supporting the development of alloys for severe applications (Invited Lecture)
COELHO, G. C. - Universidade de São Paulo
18:30
20:00
18:3020:00
Poster Exhibition Area
18:30 - 20:00
Session
Poster Session 3
G.PS3 - Poster Session 3
G - High-Entropy Materials: Microstructure, properties and new perspectives
18:30 - 20:00
4DMG - Synthesis and Characterization of the TiNiNbMoW Refractory High-Entropy Alloy
ARAUJO, A. F. - Universidade Federal de Santa Catarina Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4DMH - Influence of Milling Time on the Structure and Thermal Stability of the AlMnFeCoCu Alloy
ARAUJO, A. F. - Universidade Federal de Santa Catarina Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4DRA - High-entropy alloys of Ti-V-Cr-Nb-Mn systems: grinding and consolidation by severe plastic deformation, characterization and hydrogen storage properties
CARDOSO, K. R. - Universidade Federal de São Paulo Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4DRZ - ELECTROCHEMICAL, MORPHOLOGICAL, AND TOPOGRAPHICAL ANALYSIS OF CANTOR ALLOY VARIATIONS BEFORE AND AFTER CORROSION
GALLI, G. F. - Universidade Federal de Santa Catarina Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4DSN - Hardening Mechanisms and Elastic Modulus Simulation in Mo-Nb-Ti-Cu Refractory Alloys
BORTOLOZO, A. D. - Universidade Estadual de Campinas Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4DTV - Study of the Corrosion Behavior and Biocompatibility of Multicomponent Alloys in the Ti-Zr-Nb-Ta-Hf-Mo System for Biomaterial Applications
TELES, J. T. - Universidade Estadual de Campinas Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4E4J - Design of multicomponent alloys for hydrogen storage and use in electrochemical applications
CAMEIRÃO, A. R. - Univerdade Federal de São Carlos Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4EBQ - Phase stability and Characterization of alloys in the Co-Si-Ge System
NAVARRO, G. H. - Universidade Federal de São Carlos Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4ECY - Aluminum-Induced Short-Range Order in TaTiNb Refractory Multi-Principal Element Alloys
DAINEZI, I. - Univerdade Federal de São Carlos Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4EEA - Development of New Equimass β-Ti Alloys with Mn and Sn Additions: From Thermodynamic Simulation to Microstructural Characterization
ARAÚJO, V. D. S. P. V. D. - Universidade Estadual Paulista "Júlio de Mesquita Filho" Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4EGN - Study of annealing-induced hardening in Cu–Al alloy
NADINIC, A. M. M. - Univerdade Federal de São Carlos Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4EJ4 - Oxidation analysis of a CrCoNiAlTi multicomponent alloy
WYSARD, J. D. S. - Universidade Federal do Rio de Janeiro Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4F4S - Hydrogen storage properties of BCC and Laves phase of the Ti-V-Nb–Cr–Mn high entropy alloys
BERNARDES SERRANO, LEANDRO - Unifesp Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4FEP - Structural characterization of novel high-entropy alloys using in situ XRD
TOSCHI, V. M. S. - Universidade Estadual Paulista "Júlio de Mesquita Filho" Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4FMJ - High-Throughput Design and Experimental Evaluation of TiCrMnZrNb Alloys for Hydrogen Compression
FONTANA, G. D. L. B. G. - Universidade Estadual de Campinas Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4FMR - Oxidation resistance of WMoNbCrAlx (x = 1 and 1.5) refractory multi-component alloys obtaining by spark plasma sintering
RIBEIRO, F. N. - Federal University of Sao Paulo Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4FYY - Chemical Short-Range Ordering in TiNbMo-Based MPEAs: Role of Al and Heat Treatment
DUTRA, T. B. - Univerdade Federal de São Carlos Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4G2R - Microstructure and mechanical properties of novel TiNbFeMnAl high entropy alloy targeted for biomedical applications
CORRÊA, D. R. N. - São Paulo State University (UNESP), School of Sciences, Department of Physics and Meteorology, Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4G6M - Design and microstructure characterization of the VTiNbCrNi muti-component alloy
PONTES, Á. M. P. - Federal University of Sao Paulo Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4GBD - MECHANICAL ALLOYING SYNTHESIS AND PHYSICAL PROPERTIES CHARACTERIZATION OF EQUIATOMIC HIGH ENTROPY CrMnFeCoMo ALLOY
MARTINI, A. H. - Federal University of Santa Catarina Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4GGK - Electrodeposition of CoCrFeNiW high entropy alloy films on carbon steel substrate: Influence of the deposition time on the corrosion resistance
, C. E. R. D. S. - Federal University of ABC Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4GGV - Structure–Property Relationships in FeCoNiSiGe and CrCoNiSiGe High-Entropy Alloys
MOTTA, M. - Univerdade Federal de São Carlos Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4GGW - Superconducting Properties of a HfTiTaNb High-Entropy Alloy Probed by Transport and Magneto-Optical Imaging
QUAGLIO-GOMES, C. C. - Univerdade Federal de São Carlos Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4GXF - Influence of Ti on the Mechanical Properties and Strengthening Mechanisms of In-Situ Alloyed CoCrNi Processed via Laser Powder Bed Fusion
KHAN, A. H. - University of Campinas Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4H2A - Understanding Structure–Activity Relationships in Pt-Based High-Entropy Alloys for Oxygen Reduction Reaction
SANTOS, K. T. - Brazilian Synchrotron Light Laboratory (LNLS), Brazilian Center for Research in Energy and Materials (CNPEM) Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4HFX - Development and Functional Evaluation of FeTiNiCoX High-Entropy Alloys
NORMANDES, B. M. D. S. - Universidade Federal da Paraíba Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4HT4 - Design of a Multicomponent (High-Entropy) Protonic Electrolyte BaZr0.2Ce0.2Pr0.2Zn0.2Y0.2O3-δ for Solid Oxide Cells
MEDEIROS, R. D. S. - Instituto de Química de São Carlos Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4HTH - Development of CoCrFeMnNi High-Entropy Alloy Coatings by Friction Surfacing on Carbon and Stainless Steel
BORGES, M. V. R. - Universidade Federal de Goiás Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4HWK - Influence of Chemical Short-Range Order on the Ductile-to-Brittle Transition in Fe–V Alloys
MARQUES, L. - Federal University of São Carlos Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4HXE - In situ TEM Investigation of Martensitic-Austenitic Transformation in a Cu-Based Shape Memory Alloy
RIBEIRO, G. B. - Federal University of Sao Carlos Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4HZS - Study of Phase Stability and Lattice Parameters of Ni₂(Si,Ge) Phases
VALVERDE, M. F. L. - Univerdade Federal de São Carlos Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4J2F - The effect of short-range ordering on the stacking fault energy of CoCrNi-based multiprincipal element alloys
ANDREOLI, A. F. - Uppsala University / Uppsala Universitet Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4J4C - Combining DFT and CALPHAD to Evaluate Interfacial Energies in Ni-Based High Entropy Alloys
ASSIS, F. F. D. - Federal University of Sao Carlos Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4J4H - Aging Response of a Ti-Modified CoCrNi Medium-Entropy Alloy Processed by Laser Powder Bed Fusion
Herwans, M.M.O. - Universidade Estadual de Campinas Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
4JEJ - Production and characterization of multicomponent MoNbTa, MoNbTiZr and MoNbTaTiZr refractory high entropy alloys
PASPARDELLI, C. - Brazilian Metallurgy and Mining Company Track: G - High-Entropy Materials: Microstructure, properties and new perspectives
08:30
11:00
08:3011:00
1 - Asa 2
08:30 - 11:00
OS.G.13 - Oral Session 13
G - High-Entropy Materials: Microstructure, properties and new perspectives
4HWB - On the origin of annealing-induced hardening in multi-component alloys (Invited Lecture)
MAZZER, E. M. - Universidade Federal de São Carlos
09:00 - 09:15Oral
4DTJ - Solidification, Phase Stability and Corrosion Behavior in a Cr-Ni-Co Medium-Entropy Alloy Processed by PBF-LB
BOLFARINI, C. - Universidade Federal de São Carlos
09:15 - 09:30Oral
4FJA - Machine Learning Algorithm for Transition Temperature Prediction in High Entropy Alloys with Magnetocaloric Effect
STOCO, C. B. - Federal University of São Carlos
09:30 - 09:45Oral
4GYD - Relating lattice distortion, configurational entropy with local diffusion on FCC HEAs
MOTA, J. H. S. - Science et ingénierie des matériaux et des procédés, Univerdade Federal de São Carlos
09:45 - 10:15Invited Lecture
4EXW - Multicomponent and high-entropy coordination compounds as precursors and active electrode materials for next-generation energy conversion and storage systems (Invited Lecture)
GONÇALVES, J. M. - Instituto Mackenzie de Pesquisas em Grafeno e Nanotecnologias, Universidade Presbiteriana Mackenzie
10:15 - 10:30Oral
4EG6 - Hydrogen storage properties of thermodynamically designed C14 alloy for integration with alkaline water electrolyzers
FIGUEROA, S. J. - Centro Nacional de Pesquisa em Energia e Materiais, Universidade Estadual de Campinas
11:00
11:30
11:0011:30
11:00 - 11:30
11:00 - 11:30
CB - Coffee Break
12:30
14:00
12:3014:00
12:30 - 14:00
12:30 - 14:00
CC - Closing Ceremony
Presentation details
Beyond Classical Force Fields: A Hands-On Introduction to Machine Learning Potentials
09:00 - 12:00
Cristiano Francisco Woellner (Universidade Federal do Paraná)
Target audience: Undegraduate students, Master Students, PhD Students, Post-doctoral fellows, Professors
Duration: 4h or 6h (morning and afternoon)
Room: To be announced
Machine learning interatomic potentials (MLIPs) are rapidly becoming an essential tool in computational materials science, offering near-DFT accuracy at a fraction of the computational cost. Despite their growing popularity, the barrier to entry remains high, most researchers interested in the field struggle to find a clear, practical starting point.
This short course is designed to change that. Over approximately five hours, participants will go through the complete workflow of building and using an MLIP: from organizing DFT reference data, to training an equivariant neural network potential, to running molecular dynamics simulations and extracting meaningful material properties. Everything runs on Google Colab, so no local installation or HPC access is needed, just a laptop and a Google account.
The course uses the MACE architecture as a working example and graphene as the target material, chosen for its well-characterized mechanical properties and relatively small unit cell, ideal for a training session with limited computational time. That said, the workflow and concepts covered are general and can be readily adapted to other architectures and materials.
No prior machine learning experience is required. A basic familiarity with Python and some exposure to atomistic simulation (DFT or classical MD) is enough to follow along comfortably, but even participants with little to no background in either will be able to engage with the hands-on activities and take away a working understanding of the workflow.
Presentation details
Functional Materials for Energy, Electronics, Healthcare, and Intelligent Surfaces: Processing Technologies and Applications
09:00 - 12:00
Daniela da Silva Nunes Gomes (CENIMAT|i3N and CEMOP/UNINOVA, Department of Materials Science, NOVA School of Science and Technology)
Emanuel Abreu Antunes Carlos (CENIMAT|i3N and CEMOP/UNINOVA, Department of Materials Science, NOVA School of Science and Technology)
Henrique Martiniano Vazão de Almeida (CENIMAT|i3N and CEMOP/UNINOVA, Department of Materials Science, NOVA School of Science and Technology)
Joana Maria Dória Vaz Pinto Morais Sarmento (CENIMAT|i3N and CEMOP/UNINOVA, Department of Materials Science, NOVA School of Science and Technology)
Target audience: Undegraduate students, Master Students, PhD Students, Post-doctoral fellows, Professors
Duration: 4h or 6h (morning and afternoon)
Room: To be announced
This short course provides an integrated overview of functional materials and their role in emerging technological applications across energy, electronics, healthcare, and intelligent surfaces. The programme is structured into four focused one-hour modules, offering participants both a broad perspective and targeted insights into key areas of materials science.
The first module introduces functional materials, with particular emphasis on metal oxide nanomaterials and their applications in energy, while addressing materials for energy conversion and storage, as well as sustainability challenges, current technological limitations, and future opportunities. Particular attention will be given to device fabrication, cleanroom technologies, and advanced processing techniques (Prof. Joana Pinto).
The second module explores solution-based metal oxides and 2D materials, including advanced semiconductor materials, coating and printing technologies, and memristor devices for next-generation electronic technologies (Dr. Emanuel Carlos).
The third module focuses on biomaterials, with particular emphasis on tissue engineering and the development of materials for biomedical applications (Dr. Henrique Almeida).
The fourth module introduces intelligent surfaces, focusing on multifunctional nanomaterials and solution-based techniques for applications such as photocatalysis, self-cleaning, and environmental remediation (Prof. Daniela Gomes).
A transversal perspective on processing and manufacturing technologies will be integrated throughout the course, emphasising how material synthesis, fabrication methods, process optimisation, scalability, and technological integration influence material performance and ultimately determine the transition from laboratory-scale research to real-world applications.
Presentation details
Majorana Fermions in Nanowires: From Fundamentals to Real Devices
09:00 - 14:00
Carlos Egues (Instituto de Física de São Carlos)
Target audience: Undegraduate students, Master Students, PhD Students, Post-doctoral fellows, Professors, Industry workers
Duration: 2h or 3h (afternoon)
Room: To be announced
The idea is to present a short introduction to the field of Majorana fermions in condensed matter physics. This is a very exciting branch of topological quantum computing. Microsoft has recently put out the chip "Majorana 1" [1], purportedly the world's first topological quantum processor. Currently one of the main challenges in this field is to find new suitable materials that combine superconductivity, strong spin orbit interaction, and magnetic interaction in a setting with "not-so-strong" disorder thus enabling platforms to host these novel Majorana qubits. I will also discuss some of the current related research being done in our group at IFSC/USP [2],[3].
[1] https://news.microsoft.com/azure-quantum/
[2] https://agencia.fapesp.br/trabalho-sugere-caminho-para-viabilizar-o-uso-de-estados-de-majorana-em-computacao-quantica/57038
[3] https://www.cnnbrasil.com.br/tecnologia/estudo-brasileiro-facilita-computadores-quanticos-mais-estaveis/
Presentation details
Cristalografia na Ciência e Engenharia de Materiais: da Difração de Raios X à Cristalografia Quântica e o Design de Materiais
09:00 - 12:00
Javier Ellena (IFSC-USP (BRASIL))
Natalia Alvarez (UDELAR (URUGUAI))
Florencia di Salvo (UBA (ARGENTINA))
Target audience: Master Students, PhD Students, Post-doctoral fellows
Duration: 4h or 6h (morning and afternoon)
Room: To be announced
Este curso intensivo (4–6 horas) visa atender à comunidade multidisciplinar de Ciência e Tecnologia de Materiais, integrando fundamentos cristalográficos com aplicações práticas relevantes para pesquisadores da academia e profissionais da indústria.
Inserido no contexto do XXIV B-MRS Meeting 2026 — um evento que reúne milhares de participantes de áreas que vão desde a pesquisa básica até aplicações tecnológicas e industriais (SBPMat) — o curso aborda a cristalografia estrutural como ferramenta central para o entendimento, desenvolvimento e engenharia de materiais funcionais.
Partindo dos princípios da difração de raios X em monocristais, serão discutidas as etapas críticas da determinação estrutural com foco em problemas típicos de materiais: qualidade cristalina, desordem, interação intermolecular e correlação estrutura–propriedade. A abordagem enfatiza como a informação estrutural orienta o desempenho em aplicações como catálise, armazenamento de energia, eletrônica molecular e materiais híbridos.
Um dos eixos centrais será a introdução à cristalografia quântica aplicada a materiais, com ênfase no uso do NoSpherA2 (integrado ao Olex2) para refinamentos avançados da densidade eletrônica. Serão discutidos casos onde o modelo independente de átomos (IAM) se torna insuficiente, especialmente em sistemas com ligações metal–ligante, interações não covalentes e propriedades eletrônicas relevantes para materiais funcionais.
O curso também explorará o uso avançado da Cambridge Structural Database (CSD) e das ferramentas associadas desenvolvidas pela Cambridge Crystallographic Data Centre (CCDC) como plataformas para mineração de dados estruturais e engenharia de materiais baseada em dados estruturais. Serão apresentados fluxos de trabalho para:
Análise de tendências estruturais em grandes conjuntos de dados
Identificação de motivos estruturais em complexos de coordenação
Design e otimização de MOFs (Metal-Organic Frameworks)
Correlação entre geometria estrutural e propriedades funcionais
Casos de estudo envolvendo complexos de coordenação e MOFs serão utilizados para demonstrar como a integração entre cristalografia experimental, modelagem quântica e bases de dados acelera o desenvolvimento de novos materiais — um aspecto particularmente relevante para aplicações industriais e inovação tecnológica.
O formato do curso combina exposição conceitual com demonstrações práticas orientadas, permitindo aos participantes interagir diretamente com ferramentas computacionais amplamente utilizadas na área.
Como diferencial, o curso contará com o apoio institucional do CCDC, oferecendo aos participantes material didático especializado e licenças temporárias gratuitas das ferramentas da CSD para uso durante o curso, garantindo uma experiência prática alinhada com o estado da arte internacional.
Pré-requisitos: noções básicas de cristalografia são recomendadas, mas não obrigatórias.
Presentation details
Espectroscopia de elétrons excitados por raios-x (XPS) - Fundamentos e Aplicações / X-Ray Phothoelectron spectroscopy (XPS) - Fundamentals and Applications
09:00 - 12:00
Marcelo Eduardo Huguenin Maia da Costa (PUC-Rio)
Cesar Augusto Diaz Mendoza (UERJ)
Target audience: Master Students, PhD Students, Post-doctoral fellows, Professors, Industry workers
Duration: 4h or 6h (morning and afternoon)
Room: To be announced
Abordaremos neste curso os fundamentos e aplicações da técnica de espectroscopia de fotoelétrons. Será descrito os principios da técnica, a instrumentação necessária, as limitações e algumas aplicações em vários materiais. O curso será apresentado em português.
In this course, we will cover the fundamentals and applications of photoelectron spectroscopy. The principles of the technique, the required instrumentation, its limitations, and some applications in various materials will be described. The course will be presented in Portuguese.
Presentation details
Introduction and Perspectives of High Entropy Alloys and Materials
09:00 - 12:00
Isabela Dainezi (Federal University of São Carlos)
Francisco Gil Coury Federal University of São Carlos
Target audience: Undegraduate students, Master Students, PhD Students
Duration: 4h or 6h (morning and afternoon)
Room: To be announced
High-entropy alloys (HEAs) have emerged as a transformative class of materials, enabling unprecedented combinations of mechanical strength, chemical stability, and high-temperature performance.
Given the relatively recent development of the field, significant challenges remain in establishing reliable design strategies and in understanding the mechanisms governing microstructural evolution and properties.
This short course provides a critical and up-to-date perspective on HEAs, going beyond conventional introductory approaches.
It begins with a concise overview of historical and foundational concepts, followed by a discussion of early design concepts that are no longer universally valid, such as the initial empirical criteria (e.g., atomic size difference, mixing enthalpy, and configurational entropy).
These parameters, although important in the early development of the field, have been shown to be insufficient as universal descriptors across all alloy systems. In this context, the course introduces the transition toward thermodynamics-based design, where CALPHAD approaches are employed as guiding tools.
A central focus of the course is placed on microstructural complexity, such as ordering phenomena, chemical partitioning, and phases stability, which are now understood as key factors controlling the performance of HEAs.
The second part of the course addresses major research directions in the field, with emphasis on mechanism-based understanding. Topics include mechanical behavior, aqueous corrosion resistance, high-temperature degradation, and hydrogen embrittlement.
By integrating insights from recent advances and ongoing research, this course aims to provide participants with a realistic and forward-looking understanding of the field, bridging the gap between simplified design concepts and the complex behavior observed in practice.
Targeted at undergraduate and graduate students, this course is particularly suited for those seeking a critical perspective on current challenges and emerging opportunities in advanced metallic materials.
Presentation details
Certificação e regulamentação de nanomateriais
14:00 - 17:00
Joyce Rodrigues de Araujo (Inmetro)
Target audience: Undegraduate students, Master Students, PhD Students, Post-doctoral fellows, Professors, Industry workers
Duration: 2h or 3h (afternoon)
Room: To be announced
Este curso tem como objetivo capacitar profissionais, pesquisadores e especialistas da indústria quanto aos fundamentos, requisitos normativos e práticas aplicadas à certificação e regulamentação de nanomateriais. Serão abordados os principais conceitos relacionados à caracterização físico-química, metrologia, avaliação da conformidade e rastreabilidade, com foco nas particularidades dos materiais em escala nanométrica.
O conteúdo contempla a análise de normas técnicas nacionais e internacionais (como ISO e ABNT), diretrizes regulatórias, critérios de qualidade e segurança, além de metodologias para validação de resultados e estabelecimento de materiais de referência. Também serão discutidos os desafios associados à padronização, rotulagem, avaliação de riscos e inserção de nanomateriais no mercado global.
Ao final do curso, os participantes estarão aptos a compreender e aplicar requisitos regulatórios, contribuir para processos de certificação e apoiar o desenvolvimento seguro e confiável de produtos baseados em nanomateriais.
Presentation details
Beyond Classical Force Fields: A Hands-On Introduction to Machine Learning Potentials
14:00 - 17:00
Cristiano Francisco Woellner (Universidade Federal do Paraná)
Target audience: Undegraduate students, Master Students, PhD Students, Post-doctoral fellows, Professors
Duration: 4h or 6h (morning and afternoon)
Room: To be announced
Machine learning interatomic potentials (MLIPs) are rapidly becoming an essential tool in computational materials science, offering near-DFT accuracy at a fraction of the computational cost. Despite their growing popularity, the barrier to entry remains high, most researchers interested in the field struggle to find a clear, practical starting point.
This short course is designed to change that. Over approximately five hours, participants will go through the complete workflow of building and using an MLIP: from organizing DFT reference data, to training an equivariant neural network potential, to running molecular dynamics simulations and extracting meaningful material properties. Everything runs on Google Colab, so no local installation or HPC access is needed, just a laptop and a Google account.
The course uses the MACE architecture as a working example and graphene as the target material, chosen for its well-characterized mechanical properties and relatively small unit cell, ideal for a training session with limited computational time. That said, the workflow and concepts covered are general and can be readily adapted to other architectures and materials.
No prior machine learning experience is required. A basic familiarity with Python and some exposure to atomistic simulation (DFT or classical MD) is enough to follow along comfortably, but even participants with little to no background in either will be able to engage with the hands-on activities and take away a working understanding of the workflow.
Presentation details
Functional Materials for Energy, Electronics, Healthcare, and Intelligent Surfaces: Processing Technologies and Applications
14:00 - 17:00
Daniela da Silva Nunes Gomes (CENIMAT|i3N and CEMOP/UNINOVA, Department of Materials Science, NOVA School of Science and Technology)
Emanuel Abreu Antunes Carlos (CENIMAT|i3N and CEMOP/UNINOVA, Department of Materials Science, NOVA School of Science and Technology)
Henrique Martiniano Vazão de Almeida (CENIMAT|i3N and CEMOP/UNINOVA, Department of Materials Science, NOVA School of Science and Technology)
Joana Maria Dória Vaz Pinto Morais Sarmento (CENIMAT|i3N and CEMOP/UNINOVA, Department of Materials Science, NOVA School of Science and Technology)
Target audience: Undegraduate students, Master Students, PhD Students, Post-doctoral fellows, Professors
Duration: 4h or 6h (morning and afternoon)
Room: To be announced
This short course provides an integrated overview of functional materials and their role in emerging technological applications across energy, electronics, healthcare, and intelligent surfaces. The programme is structured into four focused one-hour modules, offering participants both a broad perspective and targeted insights into key areas of materials science.
The first module introduces functional materials, with particular emphasis on metal oxide nanomaterials and their applications in energy, while addressing materials for energy conversion and storage, as well as sustainability challenges, current technological limitations, and future opportunities. Particular attention will be given to device fabrication, cleanroom technologies, and advanced processing techniques (Prof. Joana Pinto).
The second module explores solution-based metal oxides and 2D materials, including advanced semiconductor materials, coating and printing technologies, and memristor devices for next-generation electronic technologies (Dr. Emanuel Carlos).
The third module focuses on biomaterials, with particular emphasis on tissue engineering and the development of materials for biomedical applications (Dr. Henrique Almeida).
The fourth module introduces intelligent surfaces, focusing on multifunctional nanomaterials and solution-based techniques for applications such as photocatalysis, self-cleaning, and environmental remediation (Prof. Daniela Gomes).
A transversal perspective on processing and manufacturing technologies will be integrated throughout the course, emphasising how material synthesis, fabrication methods, process optimisation, scalability, and technological integration influence material performance and ultimately determine the transition from laboratory-scale research to real-world applications.
Presentation details
Young Researchers´School: Tutorial on Scientific Writing and the Editorial Process
14:00 - 17:00
Valtencir Zucolotto (University of São Paulo)
Target audience: Undegraduate students, Master Students, PhD Students, Post-doctoral fellows, Professors, Industry workers
Duration: 2h or 3h (afternoon)
Room: To be announced
The “Young Researchers’ School” is a consolidated minicourse that has been successfully offered at the Brazilian Materials Research Society Meeting (BMRS) for over 10 years. The minicourse is financially supported by Elsevier, which provides the coffee-break. It is designed to develop, refine, and strengthen the essential skills required for researchers to design, write, and publish high-impact scientific papers.
The course seeks to help participants maximize their research potential by focusing on:
The conception and development of competitive national and international research projects.
The writing and publication of high-impact international scientific articles, including structuring manuscripts, improving clarity and impact, and navigating the peer-review process.
The appropriate and ethical use of artificial intelligence (AI) tools in scientific writing, covering best practices, limitations, and how to leverage AI to enhance productivity, clarity, and scientific rigor without compromising academic integrity.
Overall, the minicourse provides a practical and strategic framework to enhance both scientific thinking and academic writing, contributing to increased research visibility and impact at the international level.
Presentation details
Majorana Fermions in Nanowires: From Fundamentals to Real Devices
14:00 - 17:00
Carlos Egues (Instituto de Física de São Carlos)
Target audience: Undegraduate students, Master Students, PhD Students, Post-doctoral fellows, Professors, Industry workers
Duration: 2h or 3h (afternoon)
Room: To be announced
The idea is to present a short introduction to the field of Majorana fermions in condensed matter physics. This is a very exciting branch of topological quantum computing. Microsoft has recently put out the chip "Majorana 1" [1], purportedly the world's first topological quantum processor. Currently one of the main challenges in this field is to find new suitable materials that combine superconductivity, strong spin orbit interaction, and magnetic interaction in a setting with "not-so-strong" disorder thus enabling platforms to host these novel Majorana qubits. I will also discuss some of the current related research being done in our group at IFSC/USP [2],[3].
[1] https://news.microsoft.com/azure-quantum/
[2] https://agencia.fapesp.br/trabalho-sugere-caminho-para-viabilizar-o-uso-de-estados-de-majorana-em-computacao-quantica/57038
[3] https://www.cnnbrasil.com.br/tecnologia/estudo-brasileiro-facilita-computadores-quanticos-mais-estaveis/
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Cristalografia na Ciência e Engenharia de Materiais: da Difração de Raios X à Cristalografia Quântica e o Design de Materiais
14:00 - 17:00
Javier Ellena (IFSC-USP (BRASIL))
Natalia Alvarez (UDELAR (URUGUAI))
Florencia di Salvo (UBA (ARGENTINA))
Target audience: Master Students, PhD Students, Post-doctoral fellows
Duration: 4h or 6h (morning and afternoon)
Room: To be announced
Este curso intensivo (4–6 horas) visa atender à comunidade multidisciplinar de Ciência e Tecnologia de Materiais, integrando fundamentos cristalográficos com aplicações práticas relevantes para pesquisadores da academia e profissionais da indústria.
Inserido no contexto do XXIV B-MRS Meeting 2026 — um evento que reúne milhares de participantes de áreas que vão desde a pesquisa básica até aplicações tecnológicas e industriais (SBPMat) — o curso aborda a cristalografia estrutural como ferramenta central para o entendimento, desenvolvimento e engenharia de materiais funcionais.
Partindo dos princípios da difração de raios X em monocristais, serão discutidas as etapas críticas da determinação estrutural com foco em problemas típicos de materiais: qualidade cristalina, desordem, interação intermolecular e correlação estrutura–propriedade. A abordagem enfatiza como a informação estrutural orienta o desempenho em aplicações como catálise, armazenamento de energia, eletrônica molecular e materiais híbridos.
Um dos eixos centrais será a introdução à cristalografia quântica aplicada a materiais, com ênfase no uso do NoSpherA2 (integrado ao Olex2) para refinamentos avançados da densidade eletrônica. Serão discutidos casos onde o modelo independente de átomos (IAM) se torna insuficiente, especialmente em sistemas com ligações metal–ligante, interações não covalentes e propriedades eletrônicas relevantes para materiais funcionais.
O curso também explorará o uso avançado da Cambridge Structural Database (CSD) e das ferramentas associadas desenvolvidas pela Cambridge Crystallographic Data Centre (CCDC) como plataformas para mineração de dados estruturais e engenharia de materiais baseada em dados estruturais. Serão apresentados fluxos de trabalho para:
Análise de tendências estruturais em grandes conjuntos de dados
Identificação de motivos estruturais em complexos de coordenação
Design e otimização de MOFs (Metal-Organic Frameworks)
Correlação entre geometria estrutural e propriedades funcionais
Casos de estudo envolvendo complexos de coordenação e MOFs serão utilizados para demonstrar como a integração entre cristalografia experimental, modelagem quântica e bases de dados acelera o desenvolvimento de novos materiais — um aspecto particularmente relevante para aplicações industriais e inovação tecnológica.
O formato do curso combina exposição conceitual com demonstrações práticas orientadas, permitindo aos participantes interagir diretamente com ferramentas computacionais amplamente utilizadas na área.
Como diferencial, o curso contará com o apoio institucional do CCDC, oferecendo aos participantes material didático especializado e licenças temporárias gratuitas das ferramentas da CSD para uso durante o curso, garantindo uma experiência prática alinhada com o estado da arte internacional.
Pré-requisitos: noções básicas de cristalografia são recomendadas, mas não obrigatórias.
Presentation details
Espectroscopia de elétrons excitados por raios-x (XPS) - Fundamentos e Aplicações / X-Ray Phothoelectron spectroscopy (XPS) - Fundamentals and Applications
14:00 - 17:00
Marcelo Eduardo Huguenin Maia da Costa (PUC-Rio)
Cesar Augusto Diaz Mendoza (UERJ)
Target audience: Master Students, PhD Students, Post-doctoral fellows, Professors, Industry workers
Duration: 4h or 6h (morning and afternoon)
Room: To be announced
Abordaremos neste curso os fundamentos e aplicações da técnica de espectroscopia de fotoelétrons. Será descrito os principios da técnica, a instrumentação necessária, as limitações e algumas aplicações em vários materiais. O curso será apresentado em português.
In this course, we will cover the fundamentals and applications of photoelectron spectroscopy. The principles of the technique, the required instrumentation, its limitations, and some applications in various materials will be described. The course will be presented in Portuguese.
Presentation details
Single crystal growth and their technological applications
14:00 - 17:00
Manuel Henrique Lente (Federal University of São Paulo)
Target audience: Undegraduate students, Master Students, PhD Students
Duration: 2h or 3h (afternoon)
Room: To be announced
This short course focuses on the principles of crystal growth and their technological applications.
First, it will be presented some high-technological applications of single crystals, such as solar cells, high-definition medical ultrasound imaging, and optoelectronics devices to motivate the students in this subject.
Then, from the basic research point of view, it will be discussed why crystals have much higher physical properties than their compositional counterpart polycrystals and the most common methods used to grow crystals from the melt.
Some fundamentals involved in the growth processes will be also presented.
Presentation details
Introduction and Perspectives of High Entropy Alloys and Materials
14:00 - 17:00
Isabela Dainezi (Federal University of São Carlos)
Francisco Gil Coury Federal University of São Carlos
Target audience: Undegraduate students, Master Students, PhD Students
Duration: 4h or 6h (morning and afternoon)
Room: To be announced
High-entropy alloys (HEAs) have emerged as a transformative class of materials, enabling unprecedented combinations of mechanical strength, chemical stability, and high-temperature performance.
Given the relatively recent development of the field, significant challenges remain in establishing reliable design strategies and in understanding the mechanisms governing microstructural evolution and properties.
This short course provides a critical and up-to-date perspective on HEAs, going beyond conventional introductory approaches.
It begins with a concise overview of historical and foundational concepts, followed by a discussion of early design concepts that are no longer universally valid, such as the initial empirical criteria (e.g., atomic size difference, mixing enthalpy, and configurational entropy).
These parameters, although important in the early development of the field, have been shown to be insufficient as universal descriptors across all alloy systems. In this context, the course introduces the transition toward thermodynamics-based design, where CALPHAD approaches are employed as guiding tools.
A central focus of the course is placed on microstructural complexity, such as ordering phenomena, chemical partitioning, and phases stability, which are now understood as key factors controlling the performance of HEAs.
The second part of the course addresses major research directions in the field, with emphasis on mechanism-based understanding. Topics include mechanical behavior, aqueous corrosion resistance, high-temperature degradation, and hydrogen embrittlement.
By integrating insights from recent advances and ongoing research, this course aims to provide participants with a realistic and forward-looking understanding of the field, bridging the gap between simplified design concepts and the complex behavior observed in practice.
Targeted at undergraduate and graduate students, this course is particularly suited for those seeking a critical perspective on current challenges and emerging opportunities in advanced metallic materials.
Presentation details
Modelagem computacional aplicada à remediação ambiental
14:00 - 17:00
Ihosvany Camps (Universidade Federal de Alfenas (UNIFAL-MG))
Target audience: Undegraduate students, Master Students, PhD Students
Duration: 2h or 3h (afternoon)
Room: To be announced
A crise climática global impõe à ciência o desafio urgente de desenvolver materiais inovadores capazes de detectar, capturar e mitigar gases de efeito estufa com alta eficiência, seletividade e custo acessível. Nesse contexto, os nanomateriais de carbono emergem como candidatos promissores, graças às suas propriedades estruturais e eletrônicas únicas, amplamente sintonizáveis.
Ao longo do minicurso, os participantes serão conduzidos de forma progressiva pelos seguintes eixos temáticos:
- A motivação ambiental e científica por trás do desenvolvimento de sensores e adsorventes baseados em nanomateriais de carbono
- Os fundamentos metodológicos da química computacional aplicada — com destaque para otimização de estruturas, docking molecular, cálculo de propriedades eletrônicas e análise topológica de ligações químicas
- A interpretação crítica dos resultados, incluindo energias de adsorção, variações de condutividade elétrica, mecanismos de quimisorção e fisissorção, tempos de recuperação de sensores e seletividade molecular
- As simulações de dinâmica molecular em ambientes realistas — tanto com gases puros quanto em mistura com ar seco — e o que elas revelam sobre a viabilidade prática dessas nanofaixas como plataformas de captura de gases
O tema proposto articula diretamente ciência de materiais, química computacional e sustentabilidade ambiental, três eixos de crescente relevância na agenda científica nacional e internacional. A abordagem computacional apresentada demonstra como é possível realizar investigações científicas de alto impacto com baixo custo experimental, utilizando ferramentas de acesso aberto e infraestrutura de computação acessível. Além disso, o minicurso contribui para a formação de uma cultura científica orientada à resolução de problemas ambientais reais, alinhando-se aos Objetivos de Desenvolvimento Sustentável (ODS) da ONU, especialmente os ODS 13 (Ação Climática) e ODS 9 (Indústria, Inovação e Infraestrutura).
Como caso de estudo, será utilizado um trabalho científico recentemente publicado na revista internacional Surfaces and Interfaces (Elsevier, 2025, DOI: 10.1016/j.surfin.2025.106786). A pesquisa, desenvolvida no Laboratório de Modelagem Computacional — LaModel da Universidade Federal de Alfenas (UNIFAL-MG), emprega métodos computacionais semi-empíricos aliados à análise topológica para investigar como duas arquiteturas distintas de nanofaixas de carbono — a nanofaixa convencional (CNB) e a nanofaixa de Möbius (MCNB) — interagem com um conjunto de nove gases de relevância ambiental e toxicológica: NO, CO₂, COCl₂, NO₂, NH₃, H₂S, CO, CH₃OH e CH₄.
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Opening Ceremony and Memorial Lecture
18:00 - 19:30
Opening Ceremony and Memorial Lecture
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Welcome Cocktail
19:30 - 21:00
Welcome Cocktail
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Coffee Break
10:00 - 10:30
Coffee Break
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Lunch
12:30 - 14:00
Lunch
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Coffee Break
16:00 - 16:30
Coffee Break
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Coffee Break
10:00 - 10:30
Coffee Break
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Lunch
12:30 - 14:00
Lunch
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Grain Boundary Segregation of Metallic Elements: A Novel Strategy for Enhancing the Ductility of Refractory Alloys (Invited Lecture)
14:00 - 14:30 Invited Lecture
Authors
Sheng Guo
Presenter
GUO, S. - Chalmers University of Technology
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Microstructural design and deformation mechanisms in the CrCoNi system
14:30 - 14:45 Oral
Authors
Gustavo Bertoli; Guilherme Cardeal Stumpf; David D. S. Silva; Lucas Barcelos Otani; Guilherme Yuuki Koga; Amy J. Clarke; Michael J. Kaufman; Claudio S. Kiminami; Francisco Gil Coury
Presenter
BERTOLI, G. - Univerdade Federal de São Carlos
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Neutron Diffraction as a Technique for Detecting Chemical Short-Range Order in Complex concentrated alloy
14:45 - 15:00 Oral
Authors
Vinícius Pereira Bacurau; Camilo Augusto Fernandes Salvador; Guilherme Cardeal Stumpf; Angelo Fernandes Andreoli; Caroline Binde Stoco; Eric Marchezini Mazzer; Lewis Owen; Yifan Cao; Rodrigo Freitas; Daniel Miracle; Francisco Gil Coury
Presenter
BACURAU, V. P. - Univerdade Federal de São Carlos
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Special Session
15:00 - 16:00
Special Session
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Discussion Panel: Women in Material Science
15:00 - 16:00
In this session, we bring together three women researchers in the field of Materials Science, at different moments of their careers. These scientists will share their experiences and discuss the unique challenges they face as women in a research area traditionally dominated by men. We will discuss the difficulties faced by women in terms of misogyny, parenting and other challenges.
Our distinguished speakers are:
Profa. Dra. Ana Flávia Nogueira – Universidade Estadual de Campinas, UNICAMP, Brazil
Profa Dra. Juliana Zarpellon – Universidade Federal do Paraná, UFPR, Brasil
Dra Paula Fabíola Pantoja Pinheiro – Universidade Federal do Pará, UFPA, Brasil
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Coffee Break
16:00 - 16:00
Coffee Break
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Formation and OER properties of nano-porous concentrated TiVZrNbCoFe alloy (Invited Lecture)
17:30 - 18:00 Invited Lecture
Authors
Yannick Champion; Marian Chatenet; Virginie Roche; Remi Daudin; Gregory Berthomé; Alberto Moreira Jorge Junior
Presenter
CHAMPION, Y. - Centre National de la Recherche Scientifique
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How composition controls exsolution dynamics in high-entropy spinel oxides
18:00 - 18:15 Oral
Authors
Guilherme Boenny Strapasson; Andrea Kirsch; Cristiane Barbieri Rodella
Presenter
STRAPASSON, G. B. - Centro Nacional de Pesquisa em Energia e Materiais
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Role of Multi-Principal Element Interactions in Oxidation of TiNb-Based RMPEAs at 600-1100 °C
18:15 - 18:30 Oral
Authors
Isabela Dainezi; Francisco Gil Coury
Presenter
DAINEZI, I. - Univerdade Federal de São Carlos
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Conference Party
21:00 - 01:00
Conference Party
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Magnetocaloric High-Entropy Alloys: From Advanced Modelling to Advanced Characterization (Invited Lecture)
09:45 - 10:15 Invited Lecture
Authors
Victorino Franco; Zhe Cui; Jorge Revuelta-Losada; Alejandro Descalzo-Ruiz; Carlos Romero-Muñiz; Jia Yan Law
Presenter
FRANCO, V. - Universidad de Sevilla
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The Sweet Spot in the Vast High-Entropy Alloys Space for Magnetocalorics with First-Order Thermomagnetic Phase Transitions (Invited Lecture)
10:15 - 10:45 Invited Lecture
Authors
Jia Yan Law
Presenter
LAW, J. Y. - Universidad de Sevilla
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Coffee Break
10:45 - 11:15
Coffee Break
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Guided design of medium entropy alloys through nanoscale deformation mechanism competition enabled through atomistic modeling (Invited Lecture)
11:15 - 11:45 Invited Lecture
Authors
Garritt J. Tucker; Mamta Silwal
Presenter
TUCKER, G. J. - Baylor University
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Microstructural engineering for multi-phase high-entropy alloys (Invited Lecture)
11:45 - 12:15 Invited Lecture
Authors
Shiddhartha Ramprakash; Shalini Roy Koneru; Brian Welk; Paraic O'Kelly; Hamish Fraser; Yunzhi Wang
Presenter
WANG, Y. - Ohio State University
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Entropy Engineering of Inorganic Glasses
12:15 - 12:30 Oral
Authors
Marcio Luis Ferreira Nascimento; Edgar Dutra Zanotto
Presenter
NASCIMENTO, M. L. F. - Universidade Federal da Bahia
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Lunch
12:30 - 14:00
Lunch
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Variation of crystal structure in TiVZrHfNb1-xFex (x = 0, 0.2, 0.4, 0.6, 0.8 and 1) High Entropy Alloys (Invited Lecture)
14:00 - 14:30 Invited Lecture
Authors
Jacques Huot; Mohammad Masaeli
Presenter
HUOT, J. - Université du Quebec Trois-Rivieres
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Phase transformation mechanisms during hydrogenation of the TiVNbCr multicomponent alloy and their impact on the hydrogen storage properties (Invited Lecture)
14:30 - 15:00 Invited Lecture
Authors
Guilherme Zepon; Gabriela Chimello Mayer Dias; Audrey Marie Bedoch; Walter José Botta
Presenter
ZEPON, G. - Universidade Federal de São Carlos
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Efficient First-Principles Prediction of Pressure–Composition–Temperature Diagrams in Multicomponent Random Alloys for Hydrogen Storage
15:00 - 15:15 Oral
Authors
Anderson Silva Chaves; Otávio Abreu Pedroso; Walter José Botta; Guilherme Zepon
Presenter
CHAVES, A. S. - Federal University of São Carlos
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Hydrogen Storage Properties of Mg - High Entropy Alloy Composite at Mild Temperatures (Invited Lecture)
15:15 - 15:35 Invited Lecture
Authors
Daniel Rodrigo Leiva; Andrei Agafonov; Nayely Pineda Romero; Ligia Cristina Ferreira Costa; Guilherme Zepon; Claudia Zlotea
Presenter
LEIVA, D. R. - Universidade Federal de São Carlos
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Effect of heat treatment and thermomechanical processing on the microstructure and hydrogen storage properties of Ti-V-Nb-Cr-Mn multicomponent alloys (Invited Lecture)
15:35 - 16:00 Invited Lecture
Authors
Katia Regina Cardoso; Larissa Nunes Hirata; Maria Moussa; Filipe Caldatto Dalan; Ágata Mayara Paula Pontes; LEANDRO BERNARDES SERRANO; Dilermando Nagle Travessa; Jean-Louis Bobet
Presenter
CARDOSO, K. R. - Universidade Federal de São Paulo
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Coffee Break
16:00 - 16:30
Coffee Break
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Design and surface biofunctionalization of novel biomedical HEAs (Invited Lecture)
17:30 - 18:00 Invited Lecture
Authors
Diego Rafael Nespeque Correa
Presenter
CORRÊA, D. R. N. - Universidade Estadual Paulista "Júlio de Mesquita Filho"
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Thermodynamic databases supporting the development of alloys for severe applications (Invited Lecture)
18:00 - 18:30 Invited Lecture
Authors
Gilberto Carvalho Coelho; Julio Cesar Pereira dos Santos; Nabil Chaia; Carlos Angelo Nunes
Presenter
COELHO, G. C. - Universidade de São Paulo
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Synthesis and Characterization of the TiNiNbMoW Refractory High-Entropy Alloy
18:30 - 20:00 Poster
Authors
Athos Fernandes Araujo; Catarina Meiko Hayashi; Daniel Fonseca da Cunha; Felipe Martina André; Eduardo Moraes Souza; Claudio Michel Poffo
Presenter
ARAUJO, A. F. - Universidade Federal de Santa Catarina
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Influence of Milling Time on the Structure and Thermal Stability of the AlMnFeCoCu Alloy
18:30 - 20:00 Poster
Authors
Athos Fernandes Araujo; Bernhard Hermann Scheiber Neto; Catarina Meiko Hayashi; Daniel Fonseca da Cunha; Felipe Martina André; Fabrício Luiz Faita; Claudio Michel Poffo
Presenter
ARAUJO, A. F. - Universidade Federal de Santa Catarina
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High-entropy alloys of Ti-V-Cr-Nb-Mn systems: grinding and consolidation by severe plastic deformation, characterization and hydrogen storage properties
18:30 - 20:00 Poster
Authors
Fernando Augusto Rocha de Andrade; Katia Regina Cardoso; Dilermando Nagle Travessa; Gisele Ferreira de Lima
Presenter
CARDOSO, K. R. - Universidade Federal de São Paulo
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ELECTROCHEMICAL, MORPHOLOGICAL, AND TOPOGRAPHICAL ANALYSIS OF CANTOR ALLOY VARIATIONS BEFORE AND AFTER CORROSION
18:30 - 20:00 Poster
Authors
Gustavo Fernandes Galli; Athos fernades Araujo; Daniel Fonseca da Cunha; Claudio Michel Poffo; Marta Elisa Rosso Dotto; Eduardo Moraes Souza; Catarina Meiko Hayashi; Chen Tzu Hsuan
Presenter
GALLI, G. F. - Universidade Federal de Santa Catarina
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Hardening Mechanisms and Elastic Modulus Simulation in Mo-Nb-Ti-Cu Refractory Alloys
18:30 - 20:00 Poster
Authors
Ausdinir Danilo Bortolozo; Eder Lopes Ortiz; Giovana da Silva Padilha; Wisley Riuper Ramos osorio
Presenter
BORTOLOZO, A. D. - Universidade Estadual de Campinas
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Study of the Corrosion Behavior and Biocompatibility of Multicomponent Alloys in the Ti-Zr-Nb-Ta-Hf-Mo System for Biomaterial Applications
Design of multicomponent alloys for hydrogen storage and use in electrochemical applications
18:30 - 20:00 Poster
Authors
Ana Rodrigues Cameirão; Juliana Mara Pinto de Almeida; Guilherme Zepon
Presenter
CAMEIRÃO, A. R. - Univerdade Federal de São Carlos
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Phase stability and Characterization of alloys in the Co-Si-Ge System
18:30 - 20:00 Poster
Authors
Gabriel Hercules Navarro; Caroline Binde Stoco; Francisco Gil Coury
Presenter
NAVARRO, G. H. - Universidade Federal de São Carlos
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Aluminum-Induced Short-Range Order in TaTiNb Refractory Multi-Principal Element Alloys
18:30 - 20:00 Poster
Authors
Isabela Dainezi; Francisco Gil Coury
Presenter
DAINEZI, I. - Univerdade Federal de São Carlos
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Development of New Equimass β-Ti Alloys with Mn and Sn Additions: From Thermodynamic Simulation to Microstructural Characterization
18:30 - 20:00 Poster
Authors
Victor dos Santos Pena Vila de Araújo; Rafael Formenton Macedo dos Santos; Diego Rafael Nespeque Correa; Carlos Roberto Grandini
Presenter
ARAÚJO, V. D. S. P. V. D. - Universidade Estadual Paulista "Júlio de Mesquita Filho"
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Study of annealing-induced hardening in Cu–Al alloy
18:30 - 20:00 Poster
Authors
Angelo Mariano Montecinos Nadinic; Guilherme Cardeal Stumpf; Francisco Gil Coury; Eric Marchezini Mazzer
Presenter
NADINIC, A. M. M. - Univerdade Federal de São Carlos
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Oxidation analysis of a CrCoNiAlTi multicomponent alloy
18:30 - 20:00 Poster
Authors
Julio da Silva Wysard; Adriana da Cunha Rocha; Fernando Rizzo
Presenter
WYSARD, J. D. S. - Universidade Federal do Rio de Janeiro
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Hydrogen storage properties of BCC and Laves phase of the Ti-V-Nb–Cr–Mn high entropy alloys
18:30 - 20:00 Poster
Authors
LEANDRO BERNARDES SERRANO; Ágata Mayara Paula Pontes; Katia Regina Cardoso
Presenter
BERNARDES SERRANO, LEANDRO - Unifesp
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Structural characterization of novel high-entropy alloys using in situ XRD
18:30 - 20:00 Poster
Authors
Vitor Meirelles Santos Toschi; Diego Rafael Nespeque Correa; Carlos Roberto Grandini
Presenter
TOSCHI, V. M. S. - Universidade Estadual Paulista "Júlio de Mesquita Filho"
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High-Throughput Design and Experimental Evaluation of TiCrMnZrNb Alloys for Hydrogen Compression
18:30 - 20:00 Poster
Authors
Gabriel de Luccah Bueno Galliani Fontana; Renato Belli Strozi; Ricardo Floriano
Presenter
FONTANA, G. D. L. B. G. - Universidade Estadual de Campinas
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Oxidation resistance of WMoNbCrAlx (x = 1 and 1.5) refractory multi-component alloys obtaining by spark plasma sintering
18:30 - 20:00 Poster
Authors
Ágata Mayara Paula Pontes; Frederico Neme Ribeiro; Katia Regina Cardoso
Presenter
RIBEIRO, F. N. - Federal University of Sao Paulo
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Chemical Short-Range Ordering in TiNbMo-Based MPEAs: Role of Al and Heat Treatment
18:30 - 20:00 Poster
Authors
Tarcísio Bernardes Dutra; Francisco Gil Coury; Isabela Dainezi
Presenter
DUTRA, T. B. - Univerdade Federal de São Carlos
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Microstructure and mechanical properties of novel TiNbFeMnAl high entropy alloy targeted for biomedical applications
18:30 - 20:00 Poster
Authors
Luccas Nunes Caetano da Silva; Jhuliene Elen Muro Torrento; Diego Rafael Nespeque Correa; Carlos Roberto Grandini
Presenter
CORRÊA, D. R. N. - São Paulo State University (UNESP), School of Sciences, Department of Physics and Meteorology,
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Design and microstructure characterization of the VTiNbCrNi muti-component alloy
18:30 - 20:00 Poster
Authors
Ágata Mayara Paula Pontes; LEANDRO BERNARDES SERRANO; Katia Regina Cardoso
Presenter
PONTES, Á. M. P. - Federal University of Sao Paulo
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MECHANICAL ALLOYING SYNTHESIS AND PHYSICAL PROPERTIES CHARACTERIZATION OF EQUIATOMIC HIGH ENTROPY CrMnFeCoMo ALLOY
18:30 - 20:00 Poster
Authors
Arthur Heil Martini; Athos fernades Araujo; Daniel Fonseca da Cunha; Gustavo Fernandes Galli; Pablo Andres Molina Correa; Eduardo Moraes Souza; Claudio Michel Poffo
Presenter
MARTINI, A. H. - Federal University of Santa Catarina
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Electrodeposition of CoCrFeNiW high entropy alloy films on carbon steel substrate: Influence of the deposition time on the corrosion resistance
18:30 - 20:00 Poster
Authors
Carlos Eduardo Ribeiro dos Santos; Renato Altobelli Antunes; Carlos Triveño Rios
Presenter
, C. E. R. D. S. - Federal University of ABC
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Structure–Property Relationships in FeCoNiSiGe and CrCoNiSiGe High-Entropy Alloys
18:30 - 20:00 Poster
Authors
Diogo de Campos Fernandes; Caio C. Quaglio-Gomes; Maycon Motta; Francisco Gil Coury
Presenter
MOTTA, M. - Univerdade Federal de São Carlos
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Superconducting Properties of a HfTiTaNb High-Entropy Alloy Probed by Transport and Magneto-Optical Imaging
18:30 - 20:00 Poster
Authors
Caio C. Quaglio-Gomes; Vinícius Pereira Bacurau; Flávio Fávaro de Assis; Davi Chaves; Tom Henning Johansen; Wilson Aires Ortiz; Francisco Gil Coury; Maycon Motta
Presenter
QUAGLIO-GOMES, C. C. - Univerdade Federal de São Carlos
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Influence of Ti on the Mechanical Properties and Strengthening Mechanisms of In-Situ Alloyed CoCrNi Processed via Laser Powder Bed Fusion
18:30 - 20:00 Poster
Authors
Ameer Hamza Khan; Sri Bala Aditya Malladi; Márcio Sangali Cristino da Silva; João Felipe Queiroz Rodrigues; Sheng Guo; Kaio Niitsu Campo
Presenter
KHAN, A. H. - University of Campinas
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Understanding Structure–Activity Relationships in Pt-Based High-Entropy Alloys for Oxygen Reduction Reaction
18:30 - 20:00 Poster
Authors
Keyla Teixeira Santos; Audrey Marie Bedoch; Guilherme Zepon
Presenter
SANTOS, K. T. - Brazilian Synchrotron Light Laboratory (LNLS), Brazilian Center for Research in Energy and Materials (CNPEM)
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Development and Functional Evaluation of FeTiNiCoX High-Entropy Alloys
18:30 - 20:00 Poster
Authors
Bruno Mariano de Sousa Normandes; Joaquim Pereira de Lima Neto; Josué Barboza Moreira de Farias; INGRID MAYARA FIGUEIREDO DA COSTA; Francisco Riccelly Feitosa; DANIELLE GUEDES CAVALCANTE; Ricardo Francisco Alves; JAIRO LIMA DA SILVA; Mikaely Renaly Carlos da Silva; Bruno Alessandro Silva Guedes de Lima
Presenter
NORMANDES, B. M. D. S. - Universidade Federal da Paraíba
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Design of a Multicomponent (High-Entropy) Protonic Electrolyte BaZr0.2Ce0.2Pr0.2Zn0.2Y0.2O3-δ for Solid Oxide Cells
18:30 - 20:00 Poster
Authors
Ricardo dos Santos Medeiros; Valdecir Antônio Paganin; Massimiliano Lo Faro; Edson Antônio Ticianelli; Joelma Perez
Presenter
MEDEIROS, R. D. S. - Instituto de Química de São Carlos
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Development of CoCrFeMnNi High-Entropy Alloy Coatings by Friction Surfacing on Carbon and Stainless Steel
18:30 - 20:00 Poster
Authors
CRISTIANO FARIA DE OLIVEIRA; THIAGO SILVA DE SOUZA; Maria Vitoria Reis Borges; Gabriela Andrade Oliveira; Pedro Brito; Kaio Niitsu Campo; FERNANDA CHRISTINA TEOTONIO DIAS TROYSI
Presenter
BORGES, M. V. R. - Universidade Federal de Goiás
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Influence of Chemical Short-Range Order on the Ductile-to-Brittle Transition in Fe–V Alloys
18:30 - 20:00 Poster
Authors
Leandra Marques; Gabriela Bugni Ribeiro; Francisco Gil Coury
Presenter
MARQUES, L. - Federal University of São Carlos
Presentation details
In situ TEM Investigation of Martensitic-Austenitic Transformation in a Cu-Based Shape Memory Alloy
18:30 - 20:00 Poster
Authors
Gabriela Bugni Ribeiro; Eric Marchezini Mazzer; Lucas Barcelos Otani; Francisco Gil Coury
Presenter
RIBEIRO, G. B. - Federal University of Sao Carlos
Presentation details
Study of Phase Stability and Lattice Parameters of Ni₂(Si,Ge) Phases
18:30 - 20:00 Poster
Authors
Maria Fernanda Ladeira Valverde; Francisco Gil Coury
Presenter
VALVERDE, M. F. L. - Univerdade Federal de São Carlos
Presentation details
The effect of short-range ordering on the stacking fault energy of CoCrNi-based multiprincipal element alloys
18:30 - 20:00 Poster
Authors
Maria Fernanda Ladeira Valverde; Angelo Fernandes Andreoli; Francisco Gil Coury
Presenter
ANDREOLI, A. F. - Uppsala University / Uppsala Universitet
Presentation details
Combining DFT and CALPHAD to Evaluate Interfacial Energies in Ni-Based High Entropy Alloys
18:30 - 20:00 Poster
Authors
Flávio Fávaro de Assis; Gustavo Bertoli; Pedro Henrique Fernandes Oliveira; Pedro Augusto Franco Pinheiro Moreira; Francisco Gil Coury
Presenter
ASSIS, F. F. D. - Federal University of Sao Carlos
Presentation details
Aging Response of a Ti-Modified CoCrNi Medium-Entropy Alloy Processed by Laser Powder Bed Fusion
18:30 - 20:00 Poster
Authors
Matheus Herwans Matias de Oliveira; Sri Bala Aditya Malladi; Sheng Guo; Kaio Niitsu Campo
Presenter
Herwans, M.M.O. - Universidade Estadual de Campinas
Presentation details
Production and characterization of multicomponent MoNbTa, MoNbTiZr and MoNbTaTiZr refractory high entropy alloys
18:30 - 20:00 Poster
Authors
Clayton Paspardelli; Gustavo Mitsui Morishita; Filipe Caldatto Dalan; Emílcio Cardoso; Larissa Otubo; Nelson Batista de Lima; Paulo Roberto Mei; Jorge Otubo
Presenter
PASPARDELLI, C. - Brazilian Metallurgy and Mining Company
Presentation details
On the origin of annealing-induced hardening in multi-component alloys (Invited Lecture)
08:30 - 09:00 Invited Lecture
Authors
Eric Marchezini Mazzer
Presenter
MAZZER, E. M. - Universidade Federal de São Carlos
Presentation details
Solidification, Phase Stability and Corrosion Behavior in a Cr-Ni-Co Medium-Entropy Alloy Processed by PBF-LB
BOLFARINI, C. - Universidade Federal de São Carlos
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Machine Learning Algorithm for Transition Temperature Prediction in High Entropy Alloys with Magnetocaloric Effect
09:15 - 09:30 Oral
Authors
Caroline Binde Stoco; Francisco Gil Coury; Pedro Henrique Siqueira Mancilha
Presenter
STOCO, C. B. - Federal University of São Carlos
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Relating lattice distortion, configurational entropy with local diffusion on FCC HEAs
09:30 - 09:45 Oral
Authors
João Henrique Schiavon Mota; Konstantin Victor Werner; Hugo Van Landeghem; Yannick Champion; Francisco Gil Coury
Presenter
MOTA, J. H. S. - Science et ingénierie des matériaux et des procédés, Univerdade Federal de São Carlos
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Multicomponent and high-entropy coordination compounds as precursors and active electrode materials for next-generation energy conversion and storage systems (Invited Lecture)
09:45 - 10:15 Invited Lecture
Authors
Josué M. Gonçalves
Presenter
GONÇALVES, J. M. - Instituto Mackenzie de Pesquisas em Grafeno e Nanotecnologias, Universidade Presbiteriana Mackenzie
Presentation details
Hydrogen storage properties of thermodynamically designed C14 alloy for integration with alkaline water electrolyzers
10:15 - 10:30 Oral
Authors
Audrey Marie Bedoch; Danilo Justino Carastan; Walter José Botta; Guilherme Zepon